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Subcellular Localization of Arabidopsis Pathogenesis-Related 1 (PR1) Protein
T. Pečenková, R. Pleskot, V. Žárský,
Language English Country Switzerland
Document type Journal Article
NLK
Free Medical Journals
from 2000
Freely Accessible Science Journals
from 2000
PubMed Central
from 2007
Europe PubMed Central
from 2007
ProQuest Central
from 2000-03-01
Open Access Digital Library
from 2000-01-01
Open Access Digital Library
from 2007-01-01
Health & Medicine (ProQuest)
from 2000-03-01
ROAD: Directory of Open Access Scholarly Resources
from 2000
PubMed
28406455
DOI
10.3390/ijms18040825
Knihovny.cz E-resources
- MeSH
- Arabidopsis metabolism MeSH
- Endoplasmic Reticulum metabolism MeSH
- Endosomes metabolism MeSH
- Phosphatidylinositol Phosphates metabolism MeSH
- Golgi Apparatus metabolism MeSH
- Microscopy, Confocal MeSH
- Plant Leaves metabolism MeSH
- Promoter Regions, Genetic MeSH
- Arabidopsis Proteins genetics metabolism MeSH
- Recombinant Fusion Proteins biosynthesis genetics MeSH
- Nicotiana metabolism MeSH
- Green Fluorescent Proteins genetics metabolism MeSH
- Publication type
- Journal Article MeSH
The Arabidopsisthaliana pathogenesis-related 1 (PR1) is an important defense protein, so far it has only been detected in extracellular space and its subcellular sorting and transport remain unexplained. Using a green fluorescent protein (GFP) tagged full length, as well as a C-terminus truncated version of PR1, we observed that when expressed ectopically in Nicotiana benthamiana leaves, PR1 co-localizes only partially with Golgi markers, and much more prominently with the late endosome (LE)/multivesicular body (MVB) FYVE marker. The C-truncated version PR1ΔC predominantly localized to the endoplasmic reticulum (ER). The same localizations were found for stable Arabidopsis transformants with expression of PR1 and PR1ΔC driven by the native promoter. We conclude that the A. thaliana PR1 (AtPR1) undergoes an unconventional secretion pathway, starting from the C-terminus-dependent sorting from the ER, and utilizing further transportation via phosphatidyl-inositol-3-phosphate (PI(3)P) positive LE/MVB-like vesicles. The homology model of the PR1 structure shows that the cluster of positively charged amino acid residues (arginines 60, 67, 137, and lysine 135) could indeed interact with negatively charged phospholipids of cellular membranes. It remains to be resolved whether Golgi and LE/MVB localization reflects an alternative sorting or trafficking succession, and what the role of lipid interactions in it will be.
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